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Enhanced Photorefractive Properties of Tedoped Sn2P2S6
Photorefractive Properties of Lithium Tantalate Crystals as a Function of the Composition
Spatiallyresolved Investigations of Domain Switching in the Ferroelectric Relaxor
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absorption allows amplitude angle Appl applied beam carriers centers charge coefficient composition concentration constant corresponding coupling crystal curve decay decrease density dependence described detection determined developed diffraction efficiency diffusion direction domain doped dynamic effect electric field electron energy excitation experimental experiments external Figure filter frequency function gain geometry grating hologram holographic illumination incident increase induced input intensity laser length Lett light limited LiNbO3 materials measured method mirror mixing mode modulation nonlinear observed obtained optical oscillation output parameters pattern performed period phase photorefractive photorefractive crystal Phys polarization polymer position possible present propagation properties pulse pump range ratio recording reference reflection refractive index respectively response sample sensitivity shift shown shows signal solitons space spatial surface technique temperature theoretical transition wave waveguides wavelength writing